Uploaded March 2025 | Updated September 2026, 2 weeks ago
Cheap & Quick PCB, 3D Printing, CNC machining, and fabrication services from PCBWay pcbway.com/g/v8fQIG - In this video, I’ll show you how to make a simple motorized turntable for 3D scanning. It has three main parts: a fixed top plate for placing the object, a rotating middle plate powered by a stepper motor, and a base that holds all the components. The top and base plates are connected and stay in place, while the middle plate rotates independently.
To ensure smooth rotation, I’ve added bearings that help the middle plate move more easily. For scanning, I used an iOS app, but you can choose any application. The goal is to show you how to build this turntable step by step.
📌 3D Parts
This project consists of three main 3D-printed parts. The first part is the base, which includes three bearing slots, a stepper motor mount, three mounting leg slots on the sides, and a slot for a power switch. The second part is the gear plate. It has a bearing slot in the center and is the only moving part responsible for rotation. On its side, there is a mounting point for attaching a phone holder. The third part is the top plate, where the object to be scanned is placed. This piece is fixed directly from its center to the base plate, ensuring that both remain completely stationary.
Additionally, the project includes a small gear that attaches to the stepper motor, three pins to secure the bearings, and three mounting legs. There are also extension arms and a holder plate for the phone. If you don’t have a 3D printer, you can use PCBWay’s 3D printing service to get these parts. The STL files are available for free: pcbway.com/project/shareproject/How_to_Build_a_Motorized_3D_Scanning_Turntable_for_Your_Phone_20b5a863.html
On the hardware side, four 608ZZ bearings are needed to ensure smoother rotation. A few bolts and nuts are required to secure the stepper motor and phone holder. Lastly, a popular 28BYJ-48 hobby stepper motor will be used.
📌 Electronics Parts
Looking at the electronics, this project uses an ESP8266 development board, allowing the rotating table to be controlled wirelessly if needed. For the stepper motor driver, the popular ULN2003 is used. A breadboard and a few jumper wires are needed to set up the circuit.
To power the system, a 9-Volts adapter will be used, along with a few capacitors and a voltage regulator to provide 5-Volts to the development board. A circuit diagram has been shared to help you build the breadboard setup. However, placing the breadboard inside the base may interfere with the rotating gear, and loose wires could cause disconnections or short circuits.
For this reason, a custom PCB will be used instead. A previously designed PCB is a perfect fit for this project. The power connector on the PCB has been updated, and the latest version is now available on the @PCBWay project page.
📌 3D Scanning with Polycam
While researching 3D scanning apps for iPhone, I came across a great video on the @throughiris8676 YouTube channel. This video reviews multiple apps, and for this project, I chose Polycam - youtu.be/dPOldb5yTdg?si=dej-3ubbSd672x5g
Since the main focus of this project is the motorized rotating table, I will cover only the basic use of the app. If you also want to use Polycam, I recommend watching a step-by-step guide by @AndrewSink on YouTube - youtu.be/0F3uFeqFOOw?si=0EHIVMC3OUWOjj4u
After downloading the app, you can close the subscription page to continue testing it for free. In the scanning interface, you will find two capture modes. In Manual Mode, you need to press the shutter button for each capture, while in Auto Mode, you only need to press the Record button at the start and end of the scan.
0:00 Intro
0:38 3D Parts
1:40 Hardware Parts
2:00 Assembly of Parts
3:24 Breadboard Circuit
4:06 Printed Circuit Board (PCBWay)
4:33 Soldering
4:55 Electronics Assembly
5:49 Source Code
6:00 Stepper motor test
6:36 3D Scanning Apps for iPhone
6:49 Polycam 3D Scan
7:21 Object Scanning Test
8:32 End of Project
DIY Motorized 3D Scanner Turntable | Step-by-Step Build Guide
How to Build a Motorized 3D Scanning Turntable for Your Phone
3D Scanner Turntable with Stepper Motor | Full Build Guide
#3d #3dscanning #3dprinting
Cheap & Quick PCB, 3D Printing, CNC machining, and fabrication services from PCBWay pcbway.com/g/v8fQIG - In this video, I’ll show you how to make a simple motorized turntable for 3D scanning. It has three main parts: a fixed top plate for placing the object, a rotating middle plate powered by a stepper motor, and a base that holds all the components. The top and base plates are connected and stay in place, while the middle plate rotates independently.
To ensure smooth rotation, I’ve added bearings that help the middle plate move more easily. For scanning, I used an iOS app, but you can choose any application. The goal is to show you how to build this turntable step by step.
📌 3D Parts
This project consists of three main 3D-printed parts. The first part is the base, which includes three bearing slots, a stepper motor mount, three mounting leg slots on the sides, and a slot for a power switch. The second part is the gear plate. It has a bearing slot in the center and is the only moving part responsible for rotation. On its side, there is a mounting point for attaching a phone holder. The third part is the top plate, where the object to be scanned is placed. This piece is fixed directly from its center to the base plate, ensuring that both remain completely stationary.
Additionally, the project includes a small gear that attaches to the stepper motor, three pins to secure the bearings, and three mounting legs. There are also extension arms and a holder plate for the phone. If you don’t have a 3D printer, you can use PCBWay’s 3D printing service to get these parts. The STL files are available for free: pcbway.com/project/shareproject/How_to_Build_a_Motorized_3D_Scanning_Turntable_for_Your_Phone_20b5a863.html
On the hardware side, four 608ZZ bearings are needed to ensure smoother rotation. A few bolts and nuts are required to secure the stepper motor and phone holder. Lastly, a popular 28BYJ-48 hobby stepper motor will be used.
📌 Electronics Parts
Looking at the electronics, this project uses an ESP8266 development board, allowing the rotating table to be controlled wirelessly if needed. For the stepper motor driver, the popular ULN2003 is used. A breadboard and a few jumper wires are needed to set up the circuit.
To power the system, a 9-Volts adapter will be used, along with a few capacitors and a voltage regulator to provide 5-Volts to the development board. A circuit diagram has been shared to help you build the breadboard setup. However, placing the breadboard inside the base may interfere with the rotating gear, and loose wires could cause disconnections or short circuits.
For this reason, a custom PCB will be used instead. A previously designed PCB is a perfect fit for this project. The power connector on the PCB has been updated, and the latest version is now available on the @PCBWay project page.
📌 3D Scanning with Polycam
While researching 3D scanning apps for iPhone, I came across a great video on the @throughiris8676 YouTube channel. This video reviews multiple apps, and for this project, I chose Polycam - youtu.be/dPOldb5yTdg?si=dej-3ubbSd672x5g
Since the main focus of this project is the motorized rotating table, I will cover only the basic use of the app. If you also want to use Polycam, I recommend watching a step-by-step guide by @AndrewSink on YouTube - youtu.be/0F3uFeqFOOw?si=0EHIVMC3OUWOjj4u
After downloading the app, you can close the subscription page to continue testing it for free. In the scanning interface, you will find two capture modes. In Manual Mode, you need to press the shutter button for each capture, while in Auto Mode, you only need to press the Record button at the start and end of the scan.
0:00 Intro
0:38 3D Parts
1:40 Hardware Parts
2:00 Assembly of Parts
3:24 Breadboard Circuit
4:06 Printed Circuit Board (PCBWay)
4:33 Soldering
4:55 Electronics Assembly
5:49 Source Code
6:00 Stepper motor test
6:36 3D Scanning Apps for iPhone
6:49 Polycam 3D Scan
7:21 Object Scanning Test
8:32 End of Project
DIY Motorized 3D Scanner Turntable | Step-by-Step Build Guide
How to Build a Motorized 3D Scanning Turntable for Your Phone
3D Scanner Turntable with Stepper Motor | Full Build Guide
#3d #3dscanning #3dprinting
![How to Talk with Arduino Board | Voice Recognition Module | Mert Arduino
In this tutorial we will learn how to talk with the Arduino Board. For this we will use the Voice Control Module. So, we can use this module to control motors, lights and robots.Also, we will use software for record our voice commands. I used the Access Port Software for send HEX commands from Windows to the USB module. MAC users can use the CoolTerm Software for the record commands.
Also see this project: mXY Board - Low-Budget XY Plotter Drawing Robot Board https://youtu.be/0QjO08HNXos
Required Hardware:
Arduino Uno R3:
https://goo.gl/Rqc5w2
https://amzn.to/2LZr6t4
Voice Module :
https://goo.gl/J18ChT
https://amzn.to/3frJ57Z
USB to TTL Module :
https://goo.gl/hRsKP0
Servo Motor :
https://goo.gl/jQJZlG
https://amzn.to/3avwe1N
LED:
https://goo.gl/CPAXXf
https://amzn.to/3qxSs8O
Jump Wires :
https://goo.gl/n5ljN3
https://amzn.to/3doetmT
Recommended Items:
Use Your Muscles in Project - https://amzn.to/3wdL45C
37 Sensor & Module Packages - https://amzn.to/3m66WeQ
Try this Robot Arm - https://amzn.to/3fq8DCl
Best Resin 3D Printer - https://amzn.to/39tY8KB
Arduino Compatible Kits - http://bit.ly/2J2AFF7
Banggood Spring Sale - https://bit.ly/3slMbOn
Software for Voice Recognition Module:
Access Port for Windows - https://goo.gl/58BBMG
CoolTerm for MAC - https://goo.gl/uMPFWS
Download Source Code: https://create.arduino.cc/editor/mertarduinotech/3aaa5846-5742-402a-82c3-243fbfadb649/preview
Background Music:
NoCopyrightSounds
Tobu & Itro - Sunburst [NCS Release]
https://youtu.be/4lXBHD5C8do
http://soundcloud.com/7obu
http://soundcloud.com/itro
Mert Arduino and Tech How to Talk with Arduino Board | Voice Recognition Module | Mert Arduino](https://i.ytimg.com/vi/Ur1tzMDP97g/mqdefault.jpg)
![Arduino Starter Learning Kit with Simple Arduino Projects
We will review the Arduino starter learning kit on this video and we will make 2 simple projects. Projects; servo motor control with potentiometer and step motor control with potentiometer. I recommend this Arduino starter kit to all Arduino lovers.
Arduino Basic Starter Learning Kit
https://goo.gl/UGur8s
Source Code and Circuit
https://makeduino.org/arduino-starter-kit
Package included:
1 x Arduino compatible UNO R3
1 x USB cable
1 x Prototype extension board
1 x Mini breadboard
1 x 5V stepper motor
1 x 2003 stepper motor driver board
10 x Red LED
10 x Green LED
10 x Blue LED
2 x Vibration Sensor
1 x Flame sensor
1 x LM35 temperature sensor
1 x Infrared receiver
3 x Photoresistor
4 x Key cap
4 x Key switch
1 x Adjustable potentiometer
1 x Passive buzzer (piezo buzzer)
1 x Active buzzer (tone generator)
1 x Jumper cap
1 x Large breadboard
1 x Remote Control
1 x 1602 Screen
1 x 9G servos
1 x Component box
1 x 10p DuPont line
1 x Breadboard
1 x 220ohm resistance
1 x 8*8 dot matrix
1 x One digit eight segment tube
1 x Four digit eight segment tube
1 x IC 74HC595
1 x Battery Holder
1 x 1K resistor plug
1 x 10K resistor plug
1 x 9V battery
1 x 2.54mm 40pin pin header
Track: Alan Walker - Force [NCS Release]
Music provided by NoCopyrightSounds
Watch: https://youtu.be/xshEZzpS4CQ
https://soundcloud.com/alanwalkermusic Arduino Starter Learning Kit with Simple Arduino Projects](https://i.ytimg.com/vi/WNMCM-7WIF0/mqdefault.jpg)




![This clock will make you vibrate! Time to move!
https://amzn.to/3dpUqCD$0 For New members first order & Low Price for PCB Stencil at https://www.pcbway.com/
How to make the wearable activity tracking watch? This is a wearable amazing gadget designed to vibrate when it detects stagnation. Do you spend most of your time on the computer like me? Are you sitting for hours without realizing it? This is what inspired the DIY Vibrating Watch, a simple activity tracker that will notify you when you are inactive for a pre-set period of time. In this project, well build a wearable gadget designed to vibrate when it detects stagnation. This device is low-cost and can help keep you on the move.
Please subscribe ❤️ ...and turn on notifications! 🔔
➤ About the Schematic:
The heart of this project is the ATtiny85. This microcontoller can be programmed with the Arduino IDE and is easy to fit into projects to keep cost and size down. With three analog inputs and two PWM outputs, the ATtiny85 has just enough I/O for this project. For our activity sensing needs, I am using the MMA7341LC 3-axis accelerometer which outputs each axis on a different analog line. This accelerometer also has a sleep mode that can be activated by the microcontroller to improve battery life. Our activity reminder will come through a vibration motor which, despite its small size is powerful enough.
Download Gerber Files or Order PCB from PCBWay (10 pcs PCB order US $5.00):
https://www.pcbway.com/project/shareproject/ATtiny85_Wearable_Activity_Tracking_Watch.html
ATtiny85 IC:
https://bit.ly/3g7yVXJ
https://amzn.to/39taKSg
Vibration Motor:
https://bit.ly/3f9h5C4
https://amzn.to/39wpW0I
3-Axis Accelerometer:
https://bit.ly/309kbSB
https://amzn.to/3m9vnaX
Battery Holder:
https://bit.ly/2BBnmZC
https://amzn.to/3m9myhl
8 Pin Socket:
https://bit.ly/339tQtY
Slide Switch:
https://bit.ly/30SPrnP
https://amzn.to/2QSXRdI
Resistor:
https://bit.ly/2WFsNPl
https://amzn.to/3ufYYmd
Strap:
https://bit.ly/3g8GhKj
https://amzn.to/3wjqJMf
CR2032 Battery
Soldering Tools:
http://bit.ly/2Kbr9hQ
https://amzn.to/3dgwCRO
➤ Programming an ATtiny85 with an Arduino UNO:
Arduino Uno R3:
http://bit.ly/2AXpHuw
https://amzn.to/2LZr6t4
10uF Capacitors:
http://bit.ly/2s6Sonz
https://amzn.to/39qPEDS
Jumper Wires:
http://bit.ly/2J6de9E
https://amzn.to/3doetmT
Breadboard:
http://bit.ly/2H9YSUa
https://amzn.to/3qxLxwm
1) Configuring Arduino Uno as a ISP (In-System Programming):
To program the ATtiny85 we need to first set Arduino Uno in ISP mode. Connect your Arduino Uno to the PC. Open Arduino IDE and open the ArduinoISP example file (File - Examples - ArduinoISP) and upload it.
2) Adding ATtiny85 Support to Arduino IDE:
By default Arduino IDE doesnt support ATtiny85 so we should add ATtiny boards to Arduino IDE. Open File - Preferences and in the Additional Boards Manager URLs give this URL:
https://raw.githubusercontent.com/damellis/attiny/ide-1.6.x-boards-manager/package_damellis_attiny_index.json
Open Tools - Board - Board Manager. Scroll down the list where it says ATtiny by Davis A. Mellis. Click on that and install it. Now you would be able to see a new entry in the Board menu
3) Connecting ATtiny85 with Arduino Uno:
Now with all the above things ready we will start programming the ATtiny85. Connect the ATtiny85 to Arduino Uno using breadboard.
Add a 10uF capacitor between RESET and GND in the Arduino Uno. This is to avoid the Arduino Uno from being auto reset when we upload the program to the ATtiny85.
➤ Burn Bootloader and Uploading Source Code to the ATtiny85:
1) Select ATtiny under Tools - Board.
2) Then select ATtiny85 under Tools - Processor.
3) Select 8 MHz (internal) under Tools - Clock.
4) Then make sure Arduino as ISP is selected under Tools - Programmer
By default the ATtiny85 runs at 1MHz.
5) To make it to run at 8MHz select Tools - Burn Bootloader.
6) You will get the above message if burning bootloader was successful.
7) Now open the source code and upload it.
Get the Source Code from GitHub:
https://github.com/MertArduino/ATtiny85-Wearable-Activity-Tracking-Watch
Track: Broke — Soyb [Audio Library Release]
Music provided by Audio Library Plus
Watch: https://youtu.be/CuT6NlEgdQA
Free Download / Stream: alplus.io/broke
Track: I Am OK — Vishmak [Audio Library Release]
Music provided by Audio Library Plus
Watch: https://youtu.be/KZVS1ag3itA
Free Download / Stream: alplus.io/i-am-ok
Track: Besomorph & Coopex - Redemption (ft. Riell) [NCS Release]
Music provided by NoCopyrightSounds.
Watch: https://youtu.be/ZGrWry_4Q8s
Free Download / Stream: ncs.io/RedemptionYO This clock will make you vibrate! Time to move!](https://i.ytimg.com/vi/ZJ9seGhftEM/mqdefault.jpg)



